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PNAS Plus: Digital logic for soft devices

机译:PNAS Plus:用于软设备的数字逻辑

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摘要

Although soft devices (grippers, actuators, and elementary robots) are rapidly becoming an integral part of the broad field of robotics, autonomy for completely soft devices has only begun to be developed. Adaptation of conventional systems of control to soft devices requires hard valves and electronic controls. This paper describes completely soft pneumatic digital logic gates having a physical scale appropriate for use with current (macroscopic) soft actuators. Each digital logic gate utilizes a single bistable valve—the pneumatic equivalent of a Schmitt trigger—which relies on the snap-through instability of a hemispherical membrane to kink internal tubes and operates with binary high/low input and output pressures. Soft, pneumatic NOT, AND, and OR digital logic gates—which generate known pneumatic outputs as a function of one, or multiple, pneumatic inputs—allow fabrication of digital logic circuits for a set–reset latch, two-bit shift register, leading-edge detector, digital-to-analog converter (DAC), and toggle switch. The DAC and toggle switch, in turn, can control and power a soft actuator (demonstrated using a pneu-net gripper). These macroscale soft digital logic gates are scalable to high volumes of airflow, do not consume power at steady state, and can be reconfigured to achieve multiple functionalities from a single design (including configurations that receive inputs from the environment and from human users). This work represents a step toward a strategy to develop autonomous control—one not involving an electronic interface or hard components—for soft devices.
机译:尽管软设备(夹持器,执行器和基本机器人)已迅速成为机器人技术领域不可或缺的一部分,但完全软设备的自治才刚刚开始发展。使传统的控制系统适应于软设备需要硬阀和电子控制装置。本文介绍了具有适用于当前(宏观)软执行器的物理规模的完全软的气动数字逻辑门。每个数字逻辑门都利用一个双稳态阀(与施密特触发器的气动等效),它依赖于半球形膜的卡扣式不稳定性来扭结内管,并在二进制高/低输入和输出压力下运行。软,气动的NOT,AND和OR数字逻辑门—产生一个或多个气动输入的函数,产生已知的气动输出—允许制造数字逻辑电路,用于置位复位锁存器,两位移位寄存器,前导边缘检测器,数模转换器(DAC)和拨动开关。 DAC和拨动开关依次可以控制软执行器并为其供电(使用气动网状夹持器演示)。这些宏量级软数字逻辑门可扩展至大流量的气流,在稳定状态下不消耗功率,并且可以重新配置以通过单一设计实现多种功能(包括从环境和人类用户接收输入的配置)。这项工作代表了朝着为软设备开发自主控制策略(不涉及电子接口或硬组件)迈出的一步。

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